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Analysis of Resource Allocation in Final Stage Sugarcane Clonal Selection

机译:末期甘蔗无性系选择中的资源配置分析

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Superior genotypes of sugarcane (interspecific hybrids of Saccharum spp.) must continue to be developed with current resources as selection criteria evolve and expand. Developing future cultivars of sugarcane for the Everglades Agricultural Area (EAA) of South Florida with high water table tolerance and increased P-uptake efficiency could be an integral part of Everglades restoration. The objective of this study was to assess the current allocation of resources in the final selection phase of cultivar (clonal) development of the Canal Point, FL, sugarcane breeding program. Variance component analyses were conducted on elite genotypes from 7 yr of trials. Variance components were used to compare relative magnitudes of sources of variation and to explore more efficient use of resources. Variation attributable to crop ?— location interaction was nearly always the largest relative source of variation next to the residual term. The contributions to variance due to genotype ?— crop and genotype ?— location interactions were low, though these interactions cannot be discounted in cultivar release decisions. Variance due to replications was extremely low. Four statistics were used as metrics of experimental precision when reducing the number of replications. Reducing replications from eight to four did not compromise experimental precision. Removing the second-year planting sequence compromised little, if any, useful information for effective cultivar release decisions. Better allocation of resources could be achieved by alternative experimental design scenarios. Testing for high water table tolerance or P-uptake efficiency could also be included, improving ecological compatibility of agriculture in the EAA.
机译:随着选择标准的发展和扩展,必须继续利用现有资源开发甘蔗的优良基因型(糖蔗种间杂种)。为南佛罗里达大沼泽地农业区(EAA)开发具有较高水位耐受性和提高P吸收效率的甘蔗未来品种,可能是大沼泽地恢复的一个组成部分。这项研究的目的是评估佛罗里达州Canal Point甘蔗育种计划的品种(克隆)开发最后选择阶段的当前资源分配。对来自7年试验的精英基因型进行了方差成分分析。方差成分用于比较变异源的相对大小并探索资源的更有效利用。归因于作物?-位置相互作用的变异几乎总是残留项旁边最大的相对变异来源。尽管由于在品种释放决策中不能忽略这些相互作用,但由于基因型β-作物和基因型β-位置相互作用对变异的贡献很小。复制引起的差异极低。减少重复次数时,将四个统计数据用作实验精度的指标。将复制次数从八减少到四不会影响实验精度。取消第二年的种植顺序不会影响有效的品种释放决策的有用信息(如果有的话)。通过替代的实验设计方案可以更好地分配资源。还可以包括对高地下水位耐受性或P吸收效率的测试,以改善EAA中农业的生态相容性。

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